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// Fig. 21.34: fig21_34.cpp

// Standard library algorithms inplace_merge,

// reverse_copy and unique_copy.

#include <iostream>



using std::cout;

using std::endl;



#include <algorithm>  // algorithm definitions

#include <vector>     // vector class-template definition

#include <iterator>   // back_inserter definition



int main()

{

   const int SIZE = 10;

   int a1[ SIZE ] = { 1, 3, 5, 7, 9, 1, 3, 5, 7, 9 };

   std::vector< int > v1( a1, a1 + SIZE );



   std::ostream_iterator< int > output( cout, " " );



   cout << "Vector v1 contains: ";

   std::copy( v1.begin(), v1.end(), output );



   // merge first half of v1 with second half of v1 such that 

   // v1 contains sorted set of elements after merge

   std::inplace_merge( v1.begin(), v1.begin() + 5, v1.end() );



   cout << "\nAfter inplace_merge, v1 contains: ";

   std::copy( v1.begin(), v1.end(), output );

   

   std::vector< int > results1;



   // copy only unique elemements of v1 into results1

   std::unique_copy( 

      v1.begin(), v1.end(), std::back_inserter( results1 ) );



   cout << "\nAfter unique_copy results1 contains: ";

   std::copy( results1.begin(), results1.end(), output );

   

   std::vector< int > results2;

   

   cout << "\nAfter reverse_copy, results2 contains: ";

   

   // copy elements of v1 into results2 in reverse order

   std::reverse_copy( 

      v1.begin(), v1.end(), std::back_inserter( results2 ) );



   std::copy( results2.begin(), results2.end(), output );



   cout << endl;



   return 0;



} // end main



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